Renewable Energy Storage Systems for Industrialization: Large-Scale Integration, Economic Analysis, and Business Model Innovation

CHEN Yawei

High-Technology and Commercialization ›› 2025, Vol. 31 ›› Issue (10) : 74.

主管:中国科学院
主办:中国科学院文献情报中心、中国高科技产业化研究会
ISSN:1006-222X
CN:11-3556/N
High-Technology and Commercialization ›› 2025, Vol. 31 ›› Issue (10) : 74.

Renewable Energy Storage Systems for Industrialization: Large-Scale Integration, Economic Analysis, and Business Model Innovation

  • CHEN Yawei
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Abstract

This study evaluates the implementation outcomes of industrialized renewable energy storage systems. Through integrated multi-technology solutions and standardized design, the project achieved a 60% reduction in power conversion losses, with wind and solar power integration rates exceeding 90% and response times shortened to under 3 minutes. The total lifecycle costs decreased by 20%, while the payback periods for grid-side and user-side investments were reduced to 8 years and 5-6 years respectively. A scenario-specific operational model significantly enhanced user profitability, driving energy storage systems from “technically viable” to “commercially sustainable”solutions. These advancements provide practical evidence for industrial-scale deployment and market adoption.

Key words

renewable energy storage / industrialization implementation effect / full-life-cycle cost

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CHEN Yawei. Renewable Energy Storage Systems for Industrialization: Large-Scale Integration, Economic Analysis, and Business Model Innovation[J]. High-Technology and Commercialization. 2025, 31(10): 74

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